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Microbial Keratinase: Next Generation Green Catalyst and Prospective Applications
科研成果
:
期刊稿件
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文献综述
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同行评审
76
引用 (Scopus)
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探究 'Microbial Keratinase: Next Generation Green Catalyst and Prospective Applications' 的科研主题。它们共同构成独一无二的指纹。
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Keyphrases
Green Catalyst
100%
Microbial Keratinase
100%
Protease
66%
Keratin Waste
66%
Keratinase
66%
Amino Acids
33%
Biodegradation
33%
Environmental Impact
33%
Secondary Metabolites
33%
Non-renewable
33%
Underexploited
33%
Genetic Diversity
33%
Bioactive Peptides
33%
Biodiversity
33%
Prokaryotes
33%
Biotechnology
33%
Functional Properties
33%
Ecological Implications
33%
Organic Fertilizer
33%
Fertilizer Production
33%
Animal Hides
33%
Bioconversion
33%
Viable Organisms
33%
Novel Functions
33%
Cleaner Production
33%
Economic Space
33%
Bioeconomics
33%
Keratin Degradation
33%
Keratin Biomaterials
33%
Renewable Resources
33%
Distress Disorders
33%
Recent Past
33%
Livestock Feed
33%
Environmental Distress
33%
Agro-industrial Waste
33%
Structural Complexity
33%
Detergent Formulation
33%
New Traits
33%
High-value Products
33%
Improvement Strategies
33%
Bioeconomy
33%
Sustainable Implementation
33%
Keratin
33%
Source Properties
33%
Enzyme Market
33%
Microbial Metabolites
33%
Microbial Enzymes
33%
Microbial Resources
33%
Microbial Producers
33%
Existing Product
33%
Source Production
33%
Agricultural and Biological Sciences
Keratin
100%
Biodegradation
66%
Protease
66%
Genetic Divergence
33%
Amino Acid
33%
Metabolite
33%
Secondary Metabolite
33%
Distress
33%
Renewable Resource
33%
High-Value Products
33%
Livestock Feeds
33%
Organic Fertilizer
33%
Environmental Impact
33%
Industrial Waste
33%
Biochemistry, Genetics and Molecular Biology
Keratinase
100%
Keratin
60%
Enzyme
40%
Biodegradation
40%
Protease
40%
Amino Acids
20%
Metabolite
20%
Volume
20%
Genetic Divergence
20%
Prokaryote
20%
Secondary Metabolite
20%
Immunology and Microbiology
Biodegradation
100%
Volume
50%
Metabolite
50%
Prokaryote
50%
Genetic Variability
50%
Secondary Metabolite
50%
Food Science
Amino Acids
100%
Bioactive Peptides
100%
Chemical Engineering
Biodegradation
100%